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Spring-Loaded Model Revisited: Paramyxovirus Fusion Requires Engagement of a Receptor Binding Protein beyond Initial Triggering of the Fusion Protein

机译:重新考虑弹簧加载的模型:副粘病毒融合需要超越融合蛋白的初始触发的受体结合蛋白的参与。

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摘要

During paramyxovirus entry into a host cell, receptor engagement by a specialized binding protein triggers conformational changes in the adjacent fusion protein (F), leading to fusion between the viral and cell membranes. According to the existing paradigm of paramyxovirus membrane fusion, the initial activation of F by the receptor binding protein sets off a spring-loaded mechanism whereby the F protein progresses independently through the subsequent steps in the fusion process, ending in membrane merger. For human parainfluenza virus type 3 (HPIV3), the receptor binding protein (hemagglutinin-neuraminidase [HN]) has three functions: receptor binding, receptor cleaving, and activating F. We report that continuous receptor engagement by HN activates F to advance through the series of structural rearrangements required for fusion. In contrast to the prevailing model, the role of HN-receptor engagement in the fusion process is required beyond an initiating step, i.e., it is still required even after the insertion of the fusion peptide into the target cell membrane, enabling F to mediate membrane merger. We also report that for Nipah virus, whose receptor binding protein has no receptor-cleaving activity, the continuous stimulation of the F protein by a receptor-engaged binding protein is key for fusion. We suggest a general model for paramyxovirus fusion activation in which receptor engagement plays an active role in F activation, and the continued engagement of the receptor binding protein is essential to F protein function until the onset of membrane merger. This model has broad implications for the mechanism of paramyxovirus fusion and for strategies to prevent viral entry.
机译:在副粘病毒进入宿主细胞的过程中,由专门结合蛋白引起的受体结合触发相邻融合蛋白(F)的构象变化,从而导致病毒膜与细胞膜之间的融合。根据副粘病毒膜融合的现有范例,受体结合蛋白对F的初始激活引发了弹簧加载的机制,由此F蛋白通过融合过程中的后续步骤独立进行,最终结束了膜合并。对于3型人类副流感病毒(HPIV3),受体结合蛋白(血凝素神经氨酸酶[HN])具有三个功能:受体结合,受体裂解和激活F。我们报道,HN持续的受体参与激活F从而通过融合所需的一系列结构重排。与流行模型相反,HN受体在融合过程中的参与需要超出起始步骤,即,即使在将融合肽插入靶细胞膜后,F仍能介导膜,仍需要合并。我们还报告了对于尼帕病毒,其受体结合蛋白没有受体裂解活性,受体结合蛋白对F蛋白的持续刺激是融合的关键。我们建议副粘病毒融合激活的一般模型,其中受体参与在F激活中起积极作用,而受体结合蛋白的持续参与对F蛋白功能至关重要,直到膜合并开始。该模型对副粘病毒融合机制和防止病毒进入的策略具有广泛的意义。

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